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Posterior thoracic extrapedicular fixation: a biomechanical study.

机译:后胸椎椎弓根外固定术:一项生物力学研究。

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STUDY DESIGN: In vitro biomechanical testing of thoracic spine specimens using a standardized three-dimensional spine flexibility protocol. OBJECTIVES: To compare the mechanical stability of the intrapedicular and extrapedicular technique for pedicle screw placement. The hypothesis was that extrapedicular screw placement provides an equally rigid construct. SUMMARY OF BACKGROUND DATA: Pedicle screws provide rigid fixation of instabilities in the lumbar and lumbosacral spine. Anatomic considerations and the potential risk of neurologic complications are the main reasons to hesitate using pedicle screws in the thoracic spine. Extrapedicular fixation would allow safer insertion due to an increased distance to the spinal canal. METHODS: Twelve human cadaveric thoracic spines (six intra-, six extrapedicular) were instrumented with the USS system, using computed tomography-based computer navigation to ensure accurate placement. The specimens were tested in flexion-extension, torsion, and lateral bending. TheROM was measured using an optoelectronic system, and the two methods were compared before and after implantation of the USS construct and before and after fatigue testing of the construct. RESULTS: The ROM of the instrumented spine was reduced to less than 50% that of its original ROM. There were no statistically significant differences in the ROM reduction between the intra- and the extrapedicular technique. Cyclic fatiguing of the construct did not significantly increase the ROM. CONCLUSIONS: The extrapedicular technique provides a construct for stabilization of the thoracic spine that is as rigid as the conventional intrapedicular technique, but has the advantage of a safer surgical screw insertion.
机译:研究设计:使用标准化的3维脊柱柔韧性协议对胸椎标本进行体外生物力学测试。目的:比较椎弓根内和椎弓根技术置入椎弓根螺钉的机械稳定性。假设是椎弓根螺钉置入可提供同样刚性的结构。背景数据摘要:椎弓根螺钉可牢固固定不稳的腰椎和腰s骨脊柱。解剖学考虑因素和神经系统并发症的潜在风险是犹豫在胸椎中使用椎弓根螺钉的主要原因。由于到椎管的距离增加,椎弓根外固定将允许更安全的插入。方法:使用基于计算机断层扫描的计算机导航系统,以USS系统对十二个人体尸体胸椎(六个椎弓根内,六个椎弓根外)进行测量,以确保准确放置。对样品进行屈伸,扭转和横向弯曲测试。使用光电子系统测量ROM,比较这两种方法在USS植入物植入前后,疲劳测试前后。结果:仪器脊柱的ROM减少到小于其原始ROM的50%。椎弓根内和椎弓根外技术之间的ROM减少无统计学差异。构建体的循环疲劳不会显着增加ROM。结论:椎弓根技术提供了一种稳定胸椎的结构,该结构与常规椎弓根技术一样坚硬,但具有更安全的手术螺钉插入优势。

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